Application In Synthesis of 2-Hexyl-1-decanol《Toward the Prediction and Control of Glass Transition Temperature for Donor-Acceptor Polymers》 was published in 2020. The authors were Zhang, Song;Alesadi, Amirhadi;Selivanova, Mariia;Cao, Zhiqiang;Qian, Zhiyuan;Luo, Shaochuan;Galuska, Luke;Teh, Catherine;Ocheje, Michael U.;Mason, Gage T.;St. Onge, P. Blake J.;Zhou, Dongshan;Rondeau-Gagne, Simon;Xia, Wenjie;Gu, Xiaodan, and the article was included in《Advanced Functional Materials》. The author mentioned the following in the article:
Semiconducting donor-acceptor (D-A) polymers have attracted considerable attention toward the application of organic electronic and optoelectronic devices. However, a rational design rule for making semiconducting polymers with desired thermal and mech. properties is currently lacking, which greatly limits the development of new polymers for advanced applications. Here, polydiketopyrrolopyrrole (PDPP)-based D-A polymers with varied alkyl side-chain lengths and backbone moieties are systematically designed, followed by investigating their thermal and thin film mech. responses. The exptl. results show a reduction in both elastic modulus and glass transition temperature (Tg) with increasing side-chain length, which is further verified through coarse-grained mol. dynamics simulations. Informed from exptl. results, a mass-per-flexible bond model is developed to capture such observation through a linear correlation between Tg and polymer chain flexibility. Using this model, a wide range of backbone Tg over 80°C and elastic modulus over 400 MPa can be predicted for PDPP-based polymers. This study highlights the important role of side-chain structure in influencing the thermomech. performance of conjugated polymers, and provides an effective strategy to design and predict Tg and elastic modulus of future new D-A polymers. The experimental procedure involved many compounds, such as 2-Hexyl-1-decanol (cas: 2425-77-6) .
2-Hexyl-1-decanol(cas: 2425-77-6) has been shown to inhibit the growth of b16 mouse melanoma cells, suggesting it may be useful for treating skin cancer.Application In Synthesis of 2-Hexyl-1-decanol This fatty acid also has transport properties and can form hydrogen bonds with other molecules.
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